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Photocatalytic degradation of p-nitrophenol on nanometer size titanium dioxide surface modified with 5-sulfosalicylic acid

机译:5-磺基水杨酸对纳米级二氧化钛表面光催化降解对硝基苯酚

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The surface of nanometer size TiO_2 was simply and fast modified by chemical adsorption in saturated solution of 5-sulfosalicylic acid. After surface modification, a stable, yellow surface complex was formed quickly, the wavelength response range of TiO_2 was expanded, it has obvious absorption in the region from 320 to 450 nm; the adsorption efficiency of p-nitrophenol (PNP) by TiO_2 was enhanced from 42% to 84%. The photocatalytic activity was tested on the degradation of PNP. The influences of catalyst and its dosage, pH value, and PNP concentration on the degradation were investigated. On optimal photodegradation conditions, including initial pH 4.0, PNP 5 mg l~(-1), catalyst 100 mg, irradiation time 120 min with 160 W high-pressure mercury lamp, the degradation efficiency of PNP was increased from 40% to 88% after surface modification. Surface modification led not only to an increase in the light utilization, but also improved the surface coverage of PNP in comparison with the pure TiO_2. Both of these factors are crucial for the photocatalytic activity of heterogeneous photocatalysis, especially for photodegradation of benzenoid pollutants.
机译:通过在5-磺基水杨酸的饱和溶液中进行化学吸附,可以简单,快速地修饰纳米尺寸的TiO_2表面。表面改性后,快速形成稳定的黄色表面配合物,TiO_2的波长响应范围扩大,在320〜450nm范围内有明显的吸收。 TiO_2对对硝基苯酚(PNP)的吸附效率从42%提高到84%。测试了对PNP降解的光催化活性。研究了催化剂及其用量,pH值和PNP浓度对降解的影响。在最佳的光降解条件下,包括初始pH 4.0,PNP 5 mg l〜(-1),催化剂100 mg,用160 W高压汞灯照射时间120 min,PNP的降解效率从40%提高到88%表面改性后。与纯TiO_2相比,表面改性不仅导致光利用率的提高,而且还提高了PNP的表面覆盖率。这两个因素对于非均相光催化的光催化活性至关重要,尤其是对于苯类污染物的光降解而言。

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